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High repetition rate fiber and integrated waveguide femtosecond lasers

机译:高重复频率光纤和集成波导飞秒激光器

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摘要

Femtosecond lasers and the development of frequency combs have revolutionized multiple fields like metrology, spectroscopy, medical diagnostics and optical communications. However, to enable wider adoption of the technology and new applications like photonic sampling, optical arbitrary waveform generation or the calibration of astronomical spectrographs, multi-GHz repetition rate femtosecond lasers with robust performance metrics, low cost, and a compact footprint are highly desirable. In this thesis, different approaches to develop GHz mode-locked laser systems at telecommunication wavelengths are discussed and current achievements presented. Design aspects for constructing a long-term stable and compact fiber laser with 187 fs short pulses at a repetition rate of 1 GHz are covered. In order to scale the repetition rate into the multi- GHz regime, coherent pulse interleaving in novel thermally tunable waveguide interleavers is demonstrated at 10 GHz. A femtosecond erbium-doped waveguide laser is developed at GHz repetition rates and important design guidelines are provided. As saturable Bragg reflectors are crucial in all of the described systems to enable mode-locking, saturable absorber optimization is discussed and their optical performance compared. Thus, this research paves the way for compact, affordable high repetition rate fiber lasers and monolithically integrated femtosecond laser sources which can be combined on-chip with additional functionalities to develop novel photonic systems with impact on spectroscopy, sensing, telecommunications and biomedical applications.
机译:飞秒激光器和频率梳的发展彻底改变了计量,光谱学,医学诊断和光通信等多个领域。但是,为了使该技术和诸如光子采样,光学任意波形生成或天文光谱仪校准之类的新应用得到更广泛的应用,非常需要具有强大性能指标,低成本和紧凑型封装的多GHz重复频率飞秒激光器。本文讨论了在电信波长下开发GHz锁模激光系统的不同方法,并介绍了当前取得的成就。涵盖了以187 fs短脉冲以1 GHz的重复频率构建长期稳定而紧凑的光纤激光器的设计方面。为了将重复率缩放到多GHz范围,在10 GHz上演示了新型热可调波导交织器中的相干脉冲交织。飞秒掺waveguide波导激光器以GHz重复频率开发,并提供了重要的设计指南。由于可饱和布拉格反射器在所有上述系统中对于实现锁模至关重要,因此讨论了可饱和吸收体的优化并比较了它们的光学性能。因此,这项研究为紧凑,负担得起的高重复频率光纤激光器和单片集成飞秒激光源铺平了道路,这些激光器可以在芯片上与其他功能结合使用,以开发对光谱,传感,电信和生物医学应用产生影响的新型光子系统。

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